地幔(地质学)
地质学
玄武岩
结壳
地球化学
大洋地壳
大洋中脊
大陆地壳
岛弧
硫化物
俯冲
地球科学
化学
古生物学
构造学
有机化学
作者
Cin‐Ty A. Lee,Péter Luffi,Emily J. Chin,Romain Bouchet,Rajdeep Dasgupta,Douglas M. Morton,V. Le Roux,Qing‐Zhu Yin,Daphne Jin
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2012-04-05
卷期号:336 (6077): 64-68
被引量:606
标识
DOI:10.1126/science.1217313
摘要
Arc magmas are important building blocks of the continental crust. Because many arc lavas are oxidized, continent formation is thought to be associated with oxidizing conditions. On the basis of copper's (Cu's) affinity for reduced sulfur phases, we tracked the redox state of arc magmas from mantle source to emplacement in the crust. Primary arc and mid-ocean ridge basalts have identical Cu contents, indicating that the redox states of primitive arc magmas are indistinguishable from that of mid-ocean ridge basalts. During magmatic differentiation, the Cu content of most arc magmas decreases markedly because of sulfide segregation. Because a similar depletion in Cu characterizes global continental crust, the formation of sulfide-bearing cumulates under reducing conditions may be a critical step in continent formation.
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